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Wave motion, ISSN 0165-2125, 06/2018, Volume 79, pp. 73 - 83
Excitable media | Spiral wave | Spiral breakup | Cardiac cell dynamics | Periodic traveling wave | Physical Sciences | Technology | Mechanics | Physics, Multidisciplinary | Acoustics | Physics | Science & Technology | Cardiac arrhythmia | Fibrillation | Stability | Partial differential equations | Traveling waves | Bifurcations | Breakup | Mathematical models | Excitation | Ventricular fibrillation
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Science (American Association for the Advancement of Science), ISSN 0036-8075, 12/1999, Volume 286, Issue 5449, pp. 2474 - 2479
Molecules | Energy | Ionization | Hydrogen | Atoms | Coordinate systems | Wave functions | Research Articles | Charged particles | Electrons | Symmetry | Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Electron scattering | General theories and models of atomic and molecular collisions and interactions (including statistical theories, transition state, stochastic and trajectory models, etc.) | Atomic and molecular physics | Atomic excitation and ionization by electron impact | Exact sciences and technology | Atomic and molecular collision processes and interactions | Physics | Usage | Schrodinger equation | Collisions (Nuclear physics) | Research | Differential equations, Partial | Quantum electrodynamics | Atoms & subatomic particles | Quantum theory
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International journal for numerical methods in fluids, ISSN 0271-2091, 06/2018, Volume 87, Issue 4, pp. 202 - 215
total breakup model | population balance equation | computational fluid dynamics | partial breakup model | binary breakup | method of classes | Mathematics, Interdisciplinary Applications | Physical Sciences | Computer Science, Interdisciplinary Applications | Physics, Fluids & Plasmas | Technology | Computer Science | Mechanics | Mathematics | Physics | Science & Technology | Fluid dynamics | Mortality | Analysis | Formulations | Size distribution | Computational fluid dynamics | Kernel functions | Preservation | Hydrodynamics | Kernels | Particle size distribution | Dynamics | Breakage | Computer applications | Breakup | Mathematical models | Distribution functions
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Journal of applied physics, ISSN 0021-8979, 03/2010, Volume 107, Issue 6, pp. 063304 - 063304-6
Physical Sciences | Physics | Science & Technology | Physics, Applied | Poisson's equation | Particle beams | Analysis | BEAM EMITTANCE | STABILITY | BEAMS | EQUATIONS | POISSON EQUATION | PARTICLE BEAMS | PLASMA MICROINSTABILITIES | MECHANICS | ISOCHRONOUS CYCLOTRONS | HYPOTHESIS | MASS | ORBITS | ACCELERATORS | BEAM BUNCHING | DISPERSION RELATIONS | DIFFERENTIAL EQUATIONS | PLASMA INSTABILITY | DISTURBANCES | INSTABILITY | MATHEMATICAL MODELS | CYCLOTRONS | COLLECTIVE ACCELERATORS | BEAM DYNAMICS | NEGATIVE MASS INSTABILITY | PARTICLE ACCELERATORS | SPACE CHARGE | CYCLIC ACCELERATORS | PARTIAL DIFFERENTIAL EQUATIONS | NEGATIVE MASS | DYNAMICS
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Journal of fluid mechanics, ISSN 0022-1120, 02/2018, Volume 837, pp. 381 - 412
JFM Papers | computational methods | breakup/coalescence | capillary flows | Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Confinement | Deformation | Pressure effects | Partial differential equations | Methodology | Shear flow | Fluid flow | Convection | Collision dynamics | Colour | Fluids | Mathematical analysis | Dynamics | Breakup | Mathematical models | Droplets | Tension | Pollutants | Two phase flow | Computer simulation | Computational fluid dynamics | Multiphase flow | Reynolds number | Dye dispersion | Surfactants | Two dimensional flow | Flow | Interfaces | Coalescing | Equations of state | Three dimensional flow | Capillary pressure | Surface tension | Coalescence | Formulas (mathematics) | Methods | Finite difference method | Convection-diffusion equation
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Alternans and Spiral Breakup in an Excitable Reaction-Diffusion System: A Simulation Study
International scholarly research notices, ISSN 2356-7872, 11/2014, Volume 2014, pp. 459675 - 14
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Fluids (Basel), ISSN 2311-5521, 06/2018, Volume 3, Issue 2, p. 28
Slender-jet analysis | Droplet coalescence | Drop-on-demand inkjet | Droplet breakup | Design parameters | Partial differential equations | One dimensional models | Two dimensional models | Devices | Axisymmetric flow | Design | Case studies | Nozzle geometry | Accuracy | Fluids | Robustness (mathematics) | Research methodology | Nozzles | Breakup | Droplets | Mathematical models | Fluid dynamics | Computer simulation | Computational fluid dynamics | ALE (numerical method) | Numerical methods | Hydrodynamics | Two dimensional flow | Coalescing | Dynamic tests | Laminar flow | Coalescence | Computing time | Methods | Ejection | droplet breakup | droplet coalescence | slender-jet analysis | drop-on-demand inkjet
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SIAM journal on scientific computing, ISSN 1064-8275, 2011, Volume 33, Issue 4, pp. 1505 - 1524
Ghost fluid method | Front tracking method | Primary jet breakup | Physical Sciences | Mathematics | Mathematics, Applied | Science & Technology | Numerical analysis. Scientific computation | Numerical analysis | Partial differential equations | Mathematical analysis | Global analysis, analysis on manifolds | Acceleration of convergence | Exact sciences and technology | Topology. Manifolds and cell complexes. Global analysis and analysis on manifolds | Methods of scientific computing (including symbolic computation, algebraic computation) | Sciences and techniques of general use
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Simple and double microemulsions via the capillary breakup of highly stretched liquid jets
Journal of fluid mechanics, ISSN 0022-1120, 10/2016, Volume 804, pp. 550 - 577
Papers | Absolute/convective instability | capillary flows | drops | Mechanics | Physical Sciences | Physics, Fluids & Plasmas | Technology | Physics | Science & Technology | Viscosity | Biotechnology | Partial differential equations | Growth rate | Growth | Disintegration | Materials | Fluid flow | Materials science | Procedures | Materials technology | Accuracy | Energy | Dynamics | Energy conservation | Cosmetics | Microemulsions | Liquids | Stability | Computational fluid dynamics | Reynolds number | Stability analysis | Rivers | Velocity | Flow stability | Jets | Instability | Gradients | Methods | Fluid dynamics | Capillary flow | Streams
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Water science and technology, ISSN 0273-1223, 08/2016, Volume 74, Issue 3, pp. 549 - 563
Biokinetics | Modelling | Digestion | Computational fluid dynamics | Sedimentation | Flow splitting | Engineering | Physical Sciences | Engineering, Environmental | Life Sciences & Biomedicine | Technology | Water Resources | Environmental Sciences & Ecology | Science & Technology | Environmental Sciences | Models, Theoretical | Sewage - chemistry | Bacteria - metabolism | Waste Disposal, Fluid - methods | Waste Water - chemistry | Hydrodynamics | Water Purification - instrumentation | Water Purification - methods | Sewage - microbiology | Waste Water - microbiology | Bioengineering | Removal | Activated sludge | Resource recovery | Working groups | Partial differential equations | Hydraulics | Fluid flow | Agglomeration | Biology | Nutrient flow | Research | Anaerobic digestion | Environmental engineering | Waste water | Aggregation | Fluids | Anaerobic processes | Newtonian fluids | Dynamics | Breakup | Mathematical models | Civil engineering | Nutrient removal | Fluid mechanics | Nutrients (mineral) | Fluid dynamics | Biological wastewater treatment | Research & development--R&D | Disinfection | Non-Newtonian fluids | Sludge | Wastewater treatment | Biological activity | Simulation | Non Newtonian fluids | Multiphase | Flocculation | Computer applications | High frequency | Index Medicus
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